Oxy-combustion of liquid fuel in an ion transport membrane reactor
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Energy,Environmental Engineering
Link
http://link.springer.com/article/10.1007/s40095-017-0246-4/fulltext.html
Reference40 articles.
1. Ben-Mansour, R., Habib, M.A., Badr, H.M., Azharuddin, Nemitallah, M.: Characteristics of oxy-fuel combustion in an oxygen transport reactor. Energy Fuels 26(7), 4599–4606 (2012)
2. Ben-Mansour, R., Nemitallah, M.A., Habib, M.A.: Numerical investigation of oxygen permeation and methane oxy-combustion in a stagnation flow ion transport membrane reactor. Energy 54, 322–333 (2013)
3. Abanades, J.C., et al.: Emerging CO2 capture systems. Int. J. Greenhouse Gas Control 40, 126–166 (2015)
4. Ben-Mansour, R., Habib, M.A., Bamidele, O.E., Basha, M., Qasem, N.A., Peedikakkal, A., Laoui, T., Ali, M.: Carbon capture by physical adsorption: materials, experimental investigations and numerical modeling and simulations—a review. Appl. Energy 161, 225–255 (2016)
5. Smart, S., et al.: Perovskite membrane reactors: fundamentals and applications for oxygen production, syngas production and hydrogen processing. In: Gugliuzza, A., Basile, A. (eds.) Membranes for Clean and Renewable Power Applications, pp. 182–217. Woodhead Publishing, Cambridge (2014)
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